Journal of the American Oil Chemists Society · 2008 · 199 citations · 31 references
Canola OilChemical EngineeringBiomanufacturingEngineeringPetrochemicalIndustrial ChemistryHydrogen Peroxide CatalyzedGreen ChemistryAier LoadingAbstract Canola OilCatalysisChemistrySeed ProcessingCatalytic SynthesisUnsaturation Molar Ratio
Abstract Canola oil with an iodine value of 112/100 g, and containing 60% oleic acid and 20% linoleic acid, was epoxidised using a peroxyacid generated in situ from hydrogen peroxide and a carboxylic acid (acetic or formic acid) in the presence of an acidic ion exchange resin (AIER), Amberlite IR 120H. Acetic acid was found to be a better oxygen carrier than formic acid, as it produced about 10% more conversion of ethylenic unsaturation to oxirane than that produced by formic acid under otherwise identical conditions. A detailed process developmental study was then performed with the acetic acid/AIER combination. The parameters optimised were temperature (65 °C), acetic acid to ethylenic unsaturation molar ratio (0.5), hydrogen peroxide to ethylenic unsaturation molar ratio (1.5), and AIER loading (22%). An iodine conversion of 88.4% and a relative conversion to oxirane of 90% were obtained at the optimum reaction conditions. The heterogeneous catalyst, AIER, was found to be reusable and exhibited a negligible loss in activity.
31
Ullmann's encyclopedia of industrial chemistry
A.T. Peters · Dyes and Pigments · 1988 · 1.8K citations
Industrial Chemistry, Engineering, Industrial Engineering +3
Standard Methods for the Analysis of Oils, Fats and Derivatives
C. PAQUOT · Pure and Applied Chemistry · 1979 · 1.3K citations · Full text